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Synthesis and characterization of polyacrylonitrile pregelled starch graft copolymers using ferrous sulfate-hydrogen peroxide redox initiation system as surface sizing agent

机译:以硫酸亚铁-过氧化氢氧化还原引发体系为表面施胶剂的聚丙烯腈预胶淀粉接枝共聚物的合成与表征

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摘要

A graft copolymer was synthesized by graft copolymerization of starch with styrene (St) and butyl acrylate (BA), using ferrous sulfate-hydrogen peroxide redox initiation system. The starch was pregelled in the presence of acrylonitrile (AN) in aqueous alkali at high temperature before graft polymerization. Major factors affecting the polymerization reaction were investigated. It was found that a graft copolymer with higher percentage conversion (PC), graft efficiency (GE) and graft percentage (GP) was obtained by controlling the initiator concentration, concentration, and ratio of monomers and polymerization temperature. The optimum conditions were as follows: H _2O_2 concentration, 12%; monomer concentration, 120%; St/BA ratio, 1: 1; polymerization temperature, 65°C. Fourier transform infrared spectroscopy and NMR analyses were used to gain information on the structure of the products. It was demonstrated that St, BA, and AN had been successfully grafted onto starch and -CN had been saponified into -CONH_2 and -COO- to a certain degree when pregelling. Scanning electron microscope micrographs showed the coarse structure and broad network. The graft polymerization took place on the surface of starch granule and led to amorphization of the starch structure. Graft polymer had better thermal stability and was endowed with pseudo-plasticity. It was observed that the starch graft copolymer offers good properties such as water resistance as surface-sizing agent.
机译:使用硫酸亚铁-过氧化氢氧化还原引发体系,通过淀粉与苯乙烯(St)和丙烯酸丁酯(BA)的接枝共聚反应合成接枝共聚物。在接枝聚合之前,将淀粉在高温下的碱水溶液中,丙烯腈(AN)存在下进行预胶凝。研究了影响聚合反应的主要因素。通过控制引发剂的浓度,单体的浓度,比例,聚合温度,可以得到具有更高的转化率(PC),接枝效率(GE)和接枝率(GP)的接枝共聚物。最佳条件为:H _2O_2浓度为12%;单体浓度120%; St / BA比为1:1聚合温度为65℃。使用傅立叶变换红外光谱和NMR分析获得有关产品结构的信息。结果表明,预胶凝时,St,BA和AN已成功接枝到淀粉上,并且-CN在一定程度上被皂化为-CONH_2和-COO-。扫描电子显微镜照片显示出粗大结构和宽网络。接枝聚合发生在淀粉颗粒的表面上,并导致淀粉结构的非晶化。接枝聚合物具有更好的热稳定性,并具有假塑性。观察到淀粉接枝共聚物作为表面施胶剂具有良好的性能,例如耐水性。

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